Search Results - "Dedova, T."

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  1. 1

    Nanostructured solar cell based on spray pyrolysis deposited ZnO nanorod array by Krunks, M., Katerski, A., Dedova, T., Oja Acik, I., Mere, A.

    Published in Solar energy materials and solar cells (01-09-2008)
    “…In this paper we present a realization of an extremely thin absorber (ETA) layer solar cell by the chemical spray pyrolysis method. CuInS 2 absorber was…”
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    Journal Article
  2. 2

    Spray pyrolysis deposition of zinc oxide nanostructured layers by Krunks, M., Dedova, T., Oja Açik, I.

    Published in Thin solid films (23-11-2006)
    “…Highly structured ZnO layers comprising well-shaped hexagonal rods were prepared by spray pyrolysis deposition of zinc chloride aqueous solutions in the…”
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    Journal Article Conference Proceeding
  3. 3

    Comparative study of nano-structured CdS thin films prepared by CBD and spray pyrolysis: Annealing effect by Hiie, J., Dedova, T., Valdna, V., Muska, K.

    Published in Thin solid films (26-07-2006)
    “…CdS films were deposited on glass and ITO-covered glass substrates by two techniques: chemical bath deposition (CBD) and spray pyrolysis technique. CdCl 2 and…”
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    Journal Article
  4. 4

    Extremely thin absorber layer solar cells on zinc oxide nanorods by chemical spray by Krunks, M., Kärber, E., Katerski, A., Otto, K., Oja Acik, I., Dedova, T., Mere, A.

    Published in Solar energy materials and solar cells (01-07-2010)
    “…ZnO rod/In 2S 3/CuInS 2 type ETA-cells were prepared by in-line chemical spray pyrolysis method. Effects of buffer layer thickness and ZnO nanorod length…”
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    Journal Article
  5. 5

    Effect of substrate morphology on the nucleation and growth of ZnO nanorods prepared by spray pyrolysis by Dedova, T., Acik, I. Oja, Krunks, M., Mikli, V., Volobujeva, O., Mere, A.

    Published in Thin solid films (01-05-2012)
    “…ZnO nanorods were prepared by a spray pyrolysis technique on both as-received and etched Indium Tin Oxide (ITO)/glass substrates. The morphologies of the ITO…”
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    Journal Article Conference Proceeding
  6. 6

    Simulation of Air Pollution in Almaty City under Adverse Weather Conditions by Zakarin, E. A., Baklanov, A. A., Balakay, L. A., Dedova, T. V., Bostanbekov, K. A.

    Published in Russian meteorology and hydrology (01-01-2021)
    “…The problem of air pollution in Almaty city in stagnant weather conditions is considered. Such conditions are so frequent, because the city is located at the…”
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    Journal Article
  7. 7

    Effect of Zn:S molar ratio in solution on the properties of ZnS thin films and the formation of ZnS nanorods by spray pyrolysis by Dedova, T., Krunks, M., Gromyko, I., Mikli, V., Sildos, I., Utt, K., Unt, T.

    “…The ZnS layers morphology, structure, composition, and optical properties were investigated with respect to the precursors (zinc chloride and thiocarbamide,…”
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    Journal Article
  8. 8

    Hierarchical nanostructures of ZnO obtained by spray pyrolysis by Dedova, T., Krunks, M., Oja Acik, I., Klauson, D., Volobujeva, O., Mere, A.

    Published in Materials chemistry and physics (15-08-2013)
    “…A two step spray pyrolysis deposition method was applied in order to grow ZnO nanorod core/ZnO shell hierarchical nanostructures with various surface…”
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    Journal Article
  9. 9

    Growth and electrical properties of ZnO nanorod arrays prepared by chemical spray pyrolysis by Krunks, M., Dedova, T., Kärber, E., Mikli, V., Oja Acik, I., Grossberg, M., Mere, A.

    Published in Physica. B, Condensed matter (01-12-2009)
    “…Chemical spray pyrolysis was applied to grow ZnO nanorod arrays from zinc chloride solutions with pH=2 and 5 on glass/ITO substrate at 480 and 550 °C. The…”
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    Journal Article Conference Proceeding
  10. 10
  11. 11

    Chemical spray deposition of zinc oxide nanostructured layers from zinc acetate solutions by Dedova, T., Klauson, J., Badre, C., Pauporté, Th, Nisumaa, R., Mere, A., Volobujeva, O., Krunks, M.

    “…Zinc oxide (ZnO) films were deposited by chemical spray from zinc acetate aqueous solutions using continuous and pulsed spray modes. ZnO films were…”
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    Journal Article Conference Proceeding
  12. 12

    Research in solar cell technologies at Tallinn University of Technology by Mellikov, E., Altosaar, M., Krunks, M., Krustok, J., Varema, T., Volobujeva, O., Grossberg, M., Kaupmees, L., Dedova, T., Timmo, K., Ernits, K., Kois, J., Acik, I. Oja, Danilson, M., Bereznev, S.

    Published in Thin solid films (30-08-2008)
    “…The paper summarizes the results of R/D in new alternative materials and in thin film and monograin solar cells at EU Centre of Excellence in PV Materials and…”
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    Journal Article Conference Proceeding
  13. 13

    Surface properties of sprayed and electrodeposited ZnO rod layers by Gromyko, I., Krunks, M., Dedova, T., Katerski, A., Klauson, D., Oja Acik, I.

    Published in Applied surface science (31-05-2017)
    “…[Display omitted] •Surface properties of spray and electrodeposited rods were studied and compared.•Influence of hydroxyl groups on the surface of as-deposited…”
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    Journal Article
  14. 14

    Sb2S3 solar cells with TiO2 electron transporting layers synthesized by ALD and USP methods by Dedova, T., Krautmann, R., Rusu, M., Katerski, A., Krunks, M., Unold, T., Spalatu, N., Mere, A., Sydorenko, J., Sibiński, M., Acik, I. Oja

    Published in Solar energy materials and solar cells (15-01-2025)
    “…Electronic characteristics were investigated for solar cells (SCs) based on FTO/TiO2/Sb2S3/P3HT/Au structure, employing TiO2 electron transport layers (ETLs)…”
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    Journal Article
  15. 15

    Electrodeposited ZnO morphology transformations under the influence of SeO2 additive: Rods, disks, nanosheets network by Gromyko, I., Dedova, T., Polivtseva, S., Kois, J., Puust, L., Sildos, I., Mere, A., Krunks, M.

    Published in Thin solid films (30-04-2018)
    “…In this study various morphologies of ZnO including rods, disks, and nanosheets network were synthesised by electrodeposition method. The influence of the SeO2…”
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    Journal Article
  16. 16

    Enhanced photocatalytic activity of ZnO nanorods by surface treatment with HAuCl4: Synergic effects through an electron scavenging, plasmon resonance and surface hydroxylation by Dedova, T., Acik, I. Oja, Chen, Z., Katerski, A., Balmassov, K., Gromyko, I., Nagyné-Kovács, T., Szilágyi, I.M., Krunks, M.

    Published in Materials chemistry and physics (15-04-2020)
    “…In this research, we demonstrate an enhanced photocatalytic activity (PA) of ZnOR/Au composites compared to PA of plain ZnOR structures. The ZnOR were produced…”
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    Journal Article
  17. 17

    A novel deposition method to grow ZnO nanorods: Spray pyrolysis by Dedova, T., Krunks, M., Grossberg, M., Volobujeva, O., Oja Acik, I.

    Published in Superlattices and microstructures (01-07-2007)
    “…ZnO layers were deposited by chemical spray pyrolysis (CSP) using zinc chloride aqueous solutions onto indium tin oxide (ITO) glass substrates at growth…”
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    Journal Article
  18. 18

    Nanostructured solar cell by spray pyrolysis: Effect of titania barrier layer on the cell performance by Oja Acik, I., Katerski, A., Mere, A., Aarik, J., Aidla, A., Dedova, T., Krunks, M.

    Published in Thin solid films (02-02-2009)
    “…ZnO nanostructured solar cells with CuInS 2 absorber layer were prepared by chemical spray method. In order to increase chemical stability of ZnO nanorods…”
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    Journal Article
  19. 19

    Template synthesis of titanium dioxide coatings and determination of their photocatalytic activity by aqueous oxidation of humic acid by Budarnaja, O., Klauson, D., Dedova, T., Kärber, E., Viljus, M., Preis, S.

    Published in Kinetics and catalysis (01-11-2014)
    “…In this work, aqueous photocatalytic oxidation of humic acid, present in various waters as naturally occurring compound or anthropogenic pollutant, was studied…”
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    Journal Article
  20. 20

    Characterization of the chemical bath deposited In(OH) x S y films: Effect of the growth conditions by Dedova, T., Wienke, J., Goris, M., Krunks, M.

    Published in Thin solid films (2007)
    “…The In(OH) x S y thin films were deposited by chemical bath deposition (CBD) using three different deposition procedures: ‘hot’: starting the deposition at…”
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